内皮源性血管活性介质的生物合成和相互作用。

Eicosanoids Pub Date : 1991-01-01
C Thiemermann
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引用次数: 0

摘要

血管内皮是将循环血液包裹成一层连续的单层,它不仅是血液和血管壁之间的物理屏障,而且是一个高度复杂的“器官”,参与调节血管张力和通透性、血液凝固、血管生成、白细胞和血小板反应性、细菌吞噬和许多血管介质的代谢。本文重点介绍了内皮源性血管活性介质,即前列环素、内皮源性松弛因子(现表征为一氧化氮)和内皮素在生理和病理生理条件下调节血管张力的生物合成、生物作用和相互作用。这些高血管活性物质的形成受细胞内信使(单磷酸环腺苷、单磷酸环鸟苷、钙)的变化、内皮与血源性细胞和血浆成分的相互作用以及这些介质本身的相互作用的调节。目前的证据支持这样的观点,即一氧化氮在生理条件下对血管张力的调节中起着关键作用,而前列环素的产生主要是在血液供应受损的情况下维持血管通畅和组织活力的重要防御机制。虽然内皮来源的血管收缩肽内皮素-1的生理作用还不太清楚,但很明显,在病理生理条件下,内皮素的增强形成所导致的任何潜在的有害血管收缩效应都是由前列环素、一氧化氮和组织纤溶酶原激活剂的同时产生来调节的,从而防止血管过度收缩和相关血管床的血栓闭塞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biosynthesis and interaction of endothelium-derived vasoactive mediators.

The vascular endothelium, which envelopes the circulating blood in a continuous monolayer, is not only a physical barrier between blood and vessel wall, but a highly complex "organ" which is involved in the regulation of blood vessel tone and permeability, blood coagulation, angiogenesis, leukocyte and platelet reactivity, phagocytosis of bacteria and the metabolism of many vascular mediators. This article focuses on the biosynthesis, biological actions and interactions of endothelium-derived vasoactive mediators, namely, prostacyclin, endothelium-derived relaxing factor--now characterized as nitric oxide--and endothelin, in the regulation of blood vessel tone under physiological and pathophysiological conditions. The formation of these highly vasoactive substances in modulated by changes in intracellular messengers (cyclic adenosine monophosphate, cyclic guanosine monophosphate, calcium), by interactions of endothelium with blood-borne cells and plasma constituents and finally by the interaction of these mediators themselves. The current evidence supports the view that nitric oxide plays a pivotal role for the regulation of blood vessel tone under physiological conditions, while the generation of prostacyclin is primarily an important defense mechanism to maintain a sufficient blood vessel patency and tissue viability under conditions of a compromised blood supply. Although the physiological role of the endothelium-derived vasoconstrictor peptide endothelin-1 is less well defined, it is apparent that any potential harmful vasoconstrictor effects resulting from an enhanced formation of endothelin under pathophysiological conditions are modulated by the simultaneous generation of prostacyclin, nitric oxide and tissue-plasminogen activator, thus preventing excessive vasoconstriction and thrombotic occlusion of the vascular bed concerned.

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